Contribution of Candida albicans cell wall components to recognition by and escape from murine macrophages

C G J McKenzie1, U Koser, L E Lewis

  • 1College of Life Sciences & Medicine, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, United Kingdom.

Infection and Immunity
|February 4, 2010
PubMed

Insights

Candida albicans cell wall glycosylation is crucial for macrophage recognition and ingestion. Defects in glycosylation impair the fungus

Area of Science:

  • Mycology
  • Immunology
  • Cell Biology

Background:

  • Candida albicans is an opportunistic fungal pathogen.
  • Host immune evasion is critical for C. albicans pathogenicity.
  • Macrophage interaction is a key aspect of innate immunity against C. albicans.

Purpose of the Study:

  • Investigate the role of cell wall components in C. albicans-macrophage interactions.
  • Determine how glycosylation, cell wall proteins, and morphogenesis affect phagocytosis, hyphal formation, and macrophage killing.
  • Identify key factors for C. albicans immune evasion.

Main Methods:

  • Utilized mutant strains of C. albicans with defects in cell surface glycosylation, cell wall protein synthesis, and yeast-hypha morphogenesis.
  • Assessed phagocytosis by primary macrophages and cell lines.
  • Evaluated hyphal formation within phagosomes.
  • Measured the ability of C. albicans to escape from and kill macrophages.

Main Results:

  • Cell wall glycosylation is critical for C. albicans recognition and ingestion by macrophages.
  • Phosphomannan biosynthesis defects reduced phagocytosis, while O- and N-linked mannan defects increased it.
  • Mutants lacking cell wall proteins or locked in yeast form showed similar uptake to wild-type.
  • Hypha-deficient strains abrogated macrophage killing; glycosylation mutants significantly reduced it.

Conclusions:

  • Cell wall glycosylation is a major determinant of C. albicans phagocytosis by macrophages.
  • Yeast-hypha morphogenesis and cell wall composition are critical for C. albicans to evade macrophage-mediated destruction.
  • Understanding these interactions can inform strategies against C. albicans infections.

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